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堆叠式锆钛酸铅(PZT)圆盘通过复合脊柱融合植入物中的电刺激为骨愈合产生所需能量。

Stacked PZT Discs Generate Necessary Power for Bone Healing through Electrical Stimulation in a Composite Spinal Fusion Implant.

作者信息

Cadel Eileen S, Krech Ember D, Arnold Paul M, Friis Elizabeth A

机构信息

Bioengineering Graduate Program, University of Kansas, Lawrence, KS 66045, USA.

Department of Neurosurgery, University of Kansas Medical Center, Kansas City, MO 66160, USA.

出版信息

Bioengineering (Basel). 2018 Oct 23;5(4):90. doi: 10.3390/bioengineering5040090.

Abstract

Electrical stimulation devices can be used as adjunct therapy to lumbar spinal fusion to promote bone healing, but their adoption has been hindered by the large battery packs necessary to provide power. Piezoelectric composite materials within a spinal interbody cage to produce power in response to physiological lumbar loads have recently been investigated. A piezoelectric macro-fiber composite spinal interbody generated sufficient power to stimulate bone growth in a pilot ovine study, despite fabrication challenges. The objective of the present study was to electromechanically evaluate three new piezoelectric disc composites, 15-disc insert, seven-disc insert, and seven-disc Compliant Layer Adaptive Composite Stack (CLACS) insert, within a spinal interbody, and validate their use for electrical stimulation and promoting bone growth. All implants were electromechanically assessed under cyclic loads of 1000 N at 2 Hz, representing physiological lumbar loading. All three configurations produced at least as much power as the piezoelectric macro-fiber composites, validating the use of piezoelectric discs for this application. Future work is needed to characterize the electromechanical performance of commercially manufactured piezoelectric stacks under physiological lumbar loads, and mechanically assess the composite implants according to FDA guidelines for lumbar interbody fusion devices.

摘要

电刺激装置可作为腰椎融合术的辅助治疗手段来促进骨愈合,但其应用受到为提供电力所需的大型电池组的阻碍。最近,人们对置于椎间融合器内的压电复合材料进行了研究,这种材料可响应腰椎的生理负荷来产生电力。在一项初步的绵羊研究中,一种压电宏观纤维复合材料椎间融合器产生了足够的电力来刺激骨生长,尽管存在制造方面的挑战。本研究的目的是对三种新型压电圆盘复合材料、15盘植入物、7盘植入物以及7盘柔顺层自适应复合材料叠层(CLACS)植入物在椎间融合器内进行机电评估,并验证它们在电刺激和促进骨生长方面的用途。所有植入物在代表腰椎生理负荷的2赫兹1000牛的循环载荷下进行机电评估。所有这三种配置产生的电力至少与压电宏观纤维复合材料一样多,从而验证了压电圆盘在此应用中的用途。未来需要开展工作,以表征在腰椎生理负荷下商业制造的压电叠层的机电性能,并根据美国食品药品监督管理局(FDA)关于腰椎椎间融合装置的指南对复合材料植入物进行力学评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a504/6315931/bd164898f359/bioengineering-05-00090-g001.jpg

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